Multi-Wave Medical Imaging

Mathematical Modelling & Imaging Reconstruction

Nonfiction, Health & Well Being, Medical, Specialties, Radiology & Nuclear Medicine, Allied Health Services, Radiological & Ultrasound
Cover of the book Multi-Wave Medical Imaging by Habib Ammari, Josselin Garnier, Hyeonbae Kang;Loc Hoang Nguyen;Laurent Seppecher, World Scientific Publishing Company
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Author: Habib Ammari, Josselin Garnier, Hyeonbae Kang;Loc Hoang Nguyen;Laurent Seppecher ISBN: 9781786342263
Publisher: World Scientific Publishing Company Publication: March 3, 2017
Imprint: WSPC (EUROPE) Language: English
Author: Habib Ammari, Josselin Garnier, Hyeonbae Kang;Loc Hoang Nguyen;Laurent Seppecher
ISBN: 9781786342263
Publisher: World Scientific Publishing Company
Publication: March 3, 2017
Imprint: WSPC (EUROPE)
Language: English

Super-Resolution imaging refers to modern techniques of achieving resolution below conventional limits. This book gives a comprehensive overview of mathematical and computational techniques used to achieve this, providing a solid foundation on which to develop the knowledge and skills needed for practical application of techniques. Split into five parts, the first looks at the mathematical and probabilistic tools needed, before moving on to description of different types of imaging; single-wave, anomaly, multi-wave and spectroscopic and nanoparticle.

As an important contribution to the understanding of super-resolution techniques in biomedical imaging, this book is a useful resource for scientists and engineers in the fields of biomedical imaging and super-resolution, and is self-contained reference for any newcomers to these fields.

Contents:

  • Introduction

  • Mathematical and Probabilistic Tools:

    • Basic Mathematical Concepts
    • Layer Potential Techniques
    • Probabilistic Tools
    • General Image Characteristics
  • Single-Wave Imaging:

    • Electrical Impedance Tomography
    • Ultrasound and Microwave Tomographies
    • Time-Harmonic Reverse-Time Imaging with Additive Noise
    • Reverse-Time Imaging with Clutter Noise
    • Optical Coherence Tomography with Clutter Noise
  • Anomaly Imaging:

    • Small Volume Expansions
    • Anomaly Imaging Algorithms
  • Multi-Wave Imaging:

    • Photoacoustic Imaging
    • Quantitative Thermoacoustic Imaging
    • Ultrasonically Induced Lorentz Force Electrical Impedance Tomography
    • Magnetoacoustic Tomography with Magnetic Induction
    • Impediography
    • Microwave Imaging by Elastic Deformation
    • Ultrasound-Modulated Optical Tomography
    • Viscoelastic Modulus Reconstruction
    • Mechanical Vibration-Assisted Conductivity Imaging
    • Full-Field Optical Coherence Elastography
  • Spectroscopic and Nanoparticle Imaging:

    • Effective Electrical Tissue Properties
    • Plasmonic Nanoparticle Imaging
    • Nonlinear Harmonic Holography

Readership: Scientists and engineers in the fields of biomedical imaging and super-resolution, and is a solid and self-contained reference for any newcomers to these fields.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Super-Resolution imaging refers to modern techniques of achieving resolution below conventional limits. This book gives a comprehensive overview of mathematical and computational techniques used to achieve this, providing a solid foundation on which to develop the knowledge and skills needed for practical application of techniques. Split into five parts, the first looks at the mathematical and probabilistic tools needed, before moving on to description of different types of imaging; single-wave, anomaly, multi-wave and spectroscopic and nanoparticle.

As an important contribution to the understanding of super-resolution techniques in biomedical imaging, this book is a useful resource for scientists and engineers in the fields of biomedical imaging and super-resolution, and is self-contained reference for any newcomers to these fields.

Contents:

Readership: Scientists and engineers in the fields of biomedical imaging and super-resolution, and is a solid and self-contained reference for any newcomers to these fields.

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